WO2021004182A1 - Procédé et appareil de transmission de données, premier nœud de communication et second nœud de communication - Google Patents

Procédé et appareil de transmission de données, premier nœud de communication et second nœud de communication Download PDF

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Publication number
WO2021004182A1
WO2021004182A1 PCT/CN2020/092777 CN2020092777W WO2021004182A1 WO 2021004182 A1 WO2021004182 A1 WO 2021004182A1 CN 2020092777 W CN2020092777 W CN 2020092777W WO 2021004182 A1 WO2021004182 A1 WO 2021004182A1
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slrb
quality
link interface
link
service
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PCT/CN2020/092777
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English (en)
Chinese (zh)
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汪梦珍
陈琳
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中兴通讯股份有限公司
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Priority to US17/626,478 priority Critical patent/US20220286896A1/en
Priority to EP20836377.0A priority patent/EP3998786A4/fr
Priority to KR1020227004553A priority patent/KR20220034845A/ko
Priority to JP2022501310A priority patent/JP7392100B2/ja
Publication of WO2021004182A1 publication Critical patent/WO2021004182A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0252Traffic management, e.g. flow control or congestion control per individual bearer or channel
    • H04W28/0263Traffic management, e.g. flow control or congestion control per individual bearer or channel involving mapping traffic to individual bearers or channels, e.g. traffic flow template [TFT]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0268Traffic management, e.g. flow control or congestion control using specific QoS parameters for wireless networks, e.g. QoS class identifier [QCI] or guaranteed bit rate [GBR]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0273Traffic management, e.g. flow control or congestion control adapting protocols for flow control or congestion control to wireless environment, e.g. adapting transmission control protocol [TCP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/14Direct-mode setup
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/23Manipulation of direct-mode connections
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/06Selective distribution of broadcast services, e.g. multimedia broadcast multicast service [MBMS]; Services to user groups; One-way selective calling services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W92/00Interfaces specially adapted for wireless communication networks
    • H04W92/16Interfaces between hierarchically similar devices
    • H04W92/18Interfaces between hierarchically similar devices between terminal devices

Definitions

  • This application relates to a wireless communication network, such as a data transmission method, device, first communication node and second communication node.
  • the Internet of Vehicles refers to a large-scale system network for wireless communication and information exchange between vehicles-X (X includes: vehicles, pedestrians, roadside equipment, and the Internet) in accordance with agreed communication protocols and data exchange standards.
  • vehicles-X includes: vehicles, pedestrians, roadside equipment, and the Internet
  • X includes: vehicles, pedestrians, roadside equipment, and the Internet
  • vehicles can obtain driving safety, improve traffic efficiency, and obtain convenience or entertainment information.
  • IoV communication Classified from the object of wireless communication, IoV communication includes three different types: communication between vehicles (Vehicle-to-Vehicle, V2V), communication between vehicles and roadside equipment (Vehicle-to-Infrastructure, V2I) , The communication between the vehicle and the network infrastructure (Vehicle-to-Network, V2N), and the communication between the vehicle and the pedestrian (Vehicle-to-Pedestrian, V2P), collectively referred to as V2X communication.
  • the sidelink (SL) V2X communication method is one of the ways implemented by the V2X standard, that is, the service data is not forwarded by the base station and the core network, but is directly transmitted from the source user equipment to the target user equipment through the air interface.
  • 3GPP has established a project for the Internet of Vehicles communication research based on the advanced V2X service of the fifth generation mobile communication technology (5G, 5th Generation), including the Internet of Vehicles communication based on 5G air interface and the Internet of Vehicles communication based on 5G sidelink.
  • 5G fifth generation mobile communication technology
  • 5G sidelink-based IoV communication there is a technical problem that the receiving end submits it to the upper layer out of order.
  • This application provides a data transmission method, device, a first communication node and a second communication node, which solve the technical problem of non-sequential delivery from the receiving end to the upper layer.
  • the embodiment of the application provides a data transmission method applied to a first communication node, including:
  • remapping configuration information indicates the quality of service flow of the through link interface where remapping occurs, the corresponding source through link bearer SLRB and the corresponding target SLRB;
  • the embodiment of the present application provides a data transmission method applied to a second communication node, including:
  • the embodiment of the present application provides a data transmission device, which is configured in a first communication node, and includes:
  • a determining module configured to determine remapping configuration information, the remapping configuration information indicating the quality of service flow of the through link interface where remapping occurs, the corresponding source through link bearer SLRB and the corresponding target SLRB;
  • the sending module is configured to send the remapping configuration information to the second communication node.
  • An embodiment of the present application provides a data transmission device, which is configured in a second communication node, and includes:
  • a receiving module configured to receive remapping configuration information sent by the first communication node
  • a determining module configured to determine, based on the remapping configuration information, the quality of service flow of the through link interface where remapping occurs, the corresponding source SLRB and the corresponding target SLRB;
  • the transmission module is configured to transmit data of the quality of service flow of the through link interface on the target SLRB when the data transmission of the quality of service flow of the through link interface on the source SLRB is completed.
  • An embodiment of the present application provides a first communication node, including:
  • One or more processors are One or more processors;
  • Storage device for storing one or more programs
  • the one or more processors When the one or more programs are executed by the one or more processors, the one or more processors implement the data transmission method.
  • An embodiment of the present application provides a second communication node, including:
  • One or more processors are One or more processors;
  • Storage device for storing one or more programs
  • the one or more processors When the one or more programs are executed by the one or more processors, the one or more processors implement the data transmission method.
  • An embodiment of the present application provides a storage medium that stores a computer program, and when the computer program is executed by a processor, any one of the methods in the embodiments of the present application is implemented.
  • FIG. 1 is a schematic flowchart of a data transmission method provided by this application.
  • Figure 2 is a schematic diagram of the scenario of the V2X communication mode
  • FIG. 3 is a schematic diagram of communication node interaction provided by this application.
  • FIG. 4 is a schematic flowchart of another data transmission method provided by this application.
  • FIG. 5 is a schematic structural diagram of a data transmission device provided by this application.
  • FIG. 6 is a schematic structural diagram of another data transmission device provided by this application.
  • FIG. 7 is a schematic structural diagram of a first communication node provided by this application.
  • FIG. 8 is a schematic structural diagram of a second communication node provided by this application.
  • Figure 9 is a schematic diagram of a unicast communication process performed by a user equipment.
  • FIG. 1 is a schematic flowchart of a data transmission method provided by this application. This method can be applied to the situation where the receiving end delivers orderly to the upper layer when remapping (ie re-mapping) occurs in the QoS flow of the direct link interface, that is, the PC5 QoS flow.
  • the method can be executed by the data transmission device provided in the present application, and the data transmission device can be implemented by software and/or hardware and integrated on the first communication node.
  • the first communication node may be the sender.
  • the scenario of this example is V2X communication of a direct link between user equipment, that is, service data is directly transmitted from the source user equipment to the target user equipment through the air interface.
  • Figure 2 is a schematic diagram of a scenario of V2X communication. Referring to Figure 2, user equipment 21 may directly transmit service data without forwarding through the base station and the core network.
  • the V2X communication method is abbreviated as a V2X-based direct link interface, that is, PC5-based V2X communication or V2X direct link (sidelink, SL) communication.
  • Logical channel Logical channel (Logical channel, LCH), direct link interface (PC5), packet delay (Packet delay budget, PDB), access layer (Access Stratum layer, AS layer), 5G QoS identifier (5G QoS identifier, 5QI) ), QoS flow identifier (QoS flow identifier, QFI), direct link interface quality of service flow identifier (PC5 QoS flow identifier, PFI), service data adaptation protocol (Service Data Adaptation Protocol, SDAP), access and mobility management functions ( Access and Mobility Management Function, AMF), 5QI (PC5 5QI, PQI) on the PC5 interface, Sidelink bearer (Sidelink radio bearer, SLRB), logical channel prioritization (LCP), media access control-control Element (Media Access Control-Control Element, MAC-CE), Unacknowledged Mode (UM) and Acknowledged Mode (AM), Protocol Data Unit (PDU) and Signaling Radio Bearer (Signalling) Radio Bearer (SRB), Radio Resource
  • a per flow-based QoS model based on the Quality of Service (QoS) model is supported. Specifically, V2X packets are mapped To the direct link interface QoS flow (PC5 QoS flow), the PC5 QoS flow is then mapped to the Sidelink bearer (sidelink radio bearer, SLRB) for transmission.
  • PC5 QoS flow is re-mapping, it may cause the problem of non-sequential delivery from the receiving end to the upper layer. Therefore, when the PC5 QoS flow remapping occurs, the problem of non-sequential delivery from the receiving end to the upper layer is urgently to be solved.
  • the flow-based QoS model is supported, namely per flow-based QoS model.
  • V2X packets will be mapped to PC5 QoS flow
  • PC5 QoS flow will be mapped to the direct link bearer ⁇ Transfer.
  • This application provides a method to ensure that the receiving end delivers to the upper layer in order when the PC5 QoS flow is remapped.
  • the connected UE wants to perform sidelink communication, it needs to report the service information to be transmitted and request sidelink resources to the base station.
  • This application provides direct link user equipment information, that is, the specific trigger conditions and related timing procedures of sidelinkUEInformation.
  • PC5 QoS flow was originally mapped to SLRB1 for transmission. After that, PC5 QoS flow may be reconfigured and mapped to SLRB2 for transmission, that is, PC5 QoS flow re-mapping occurs.
  • SLRB2 and SLRB1 belong to sidelink bearers with the same source and target identifiers. For example, when the UE switches from the current base station to another base station, the new base station may reconfigure/update the mapping from PC5 QoS flow to SLRB according to the sidelink resource situation. Or, PC5 QoS flow is remapped from the default SLRB to another SLRB.
  • PC5 QoS flow re-mapping When PC5 QoS flow re-mapping occurs, it may cause out of order delivery when the receiving end UE transmits data to the upper layer.
  • the source SLRB caches some of the QoS flow The data has not been transmitted yet, and new data arriving with this QoS flow should be transmitted through the new SLRB, that is, the target SLRB. It is possible that the data buffered by the source SLRB has not been transmitted yet, and the receiving end has received the new data on the new SLRB. And submit it to the upper level. If you want to ensure that the order is submitted to the upper level, you need to consider the guarantee mechanism.
  • the UE If it is a sidelink broadcast/multicast, it can only be implemented based on the sending UE. For example, when the UE receives the PC5 QoS flow re-mapping configuration, the UE will start to transmit the PC5 QoS flow data on the new SLRB only after the data of the PC5 QoS flow buffered on the source SLRB is completed. But this way will destroy the LCP mechanism that the UE needs to follow.
  • the present application provides a data transmission method applied to a first communication node, including S110-S120.
  • the remapping configuration information may be information that is sent by the first communication node to the second communication node to indicate the quality of service flow of the through link interface where remapping occurs.
  • the quality of service flow of the through link interface where the remapping occurs may have a corresponding source SLRB and a target SLRB. That is, the SLRB originally mapped for the quality of service flow of the through link interface where the remapping occurred and the SLRB mapped after the remapping.
  • the first communication node may directly use the configuration information as the remapping configuration information; it may also determine the remapping configuration information after analyzing the configuration information.
  • the remapping configuration information can be embodied as: PC5 QoS flow is released from the source SLRB and PC5 QoS flow is added to the target SLRB; or, PC5 QoS flow remapping indication and identification information of the source SLRB and identification information of the target SLRB.
  • the first communication node may send the remapping configuration information to the second communication node, so that the second communication node implements orderly delivery to the upper layer based on the remapping configuration information.
  • the means for the first communication node to send the remapping configuration information is not limited.
  • the first communication node may send the remapping configuration information to the second communication node through a radio resource control message or MAC-CE.
  • remapping configuration information is determined, and the remapping configuration information indicates the quality of service flow of the through link interface where remapping occurs, the corresponding source through link bearer SLRB and the corresponding target SLRB;
  • the second communication node sends the remapping configuration information, which solves the technical problem of non-sequential delivery of the second communication node to the upper layer, effectively guarantees the orderly delivery of the second communication node to the upper layer, and improves the reliability of data transmission.
  • the remapping configuration information includes the modified mapping relationship between the SLRB and the quality of service flow of the through link interface.
  • the modified mapping relationship between the SLRB and the quality of service flow of the through link interface may be relative to the existing mapping relationship between the SLRB and the quality of service flow of the through link interface, which appears in the mapping relationship between the SLRB and the quality of service flow of the through link interface Changes in the mapping relationship. For example, it includes: deleting the existing PC5 QoS flow mapped to the SLRB, and/or adding a new mapping relationship between the SLRB and PC5 QoS flow, and/or adding a new PC5 QoS flow mapped to the SLRB.
  • the remapping configuration information includes identification information of the quality of service flow of the through link interface where remapping occurs, identification information of the corresponding source SLRB, and identification information of the corresponding target SLRB.
  • the remapping configuration information may include the identification information of the quality of service flow of the through link interface where remapping occurred, the identification information of the source SLRB corresponding to the quality of service flow of the through link interface where remapping occurred, and the quality of service of the through link interface where remapping occurred.
  • the identification information of the quality of service flow of the through link interface that undergoes remapping is: the quality of service flow identifier of the through link interface, the 5G quality of service identifier on the through link interface, and the quality of service of the through link interface Parameter or quality of service profile of the through link interface.
  • the identification information of the source SLRB is the source SLRB identification or the logical channel identification corresponding to the source SLRB; the identification information of the target SLRB is the target SLRB identification or the logical channel identification corresponding to the target SLRB.
  • sending the remapping configuration information to the second communication node includes:
  • one way for the first communication node to send the remapping configuration information of the PC5 QoS flow to the second communication node is every time the PC5 QoS flow(s) mapped to a certain SLRB changes (the UE receives the information sent by the base station).
  • the mapping between PC5 QoS flow and SLRB (that is, PC5 QoS flow to SLRB mapping) changes), whether it is added, released or remapped, the UE sends the latest configured/updated PC5 QoS flow to SLRB mapping relationship to the peer UE ( That is, the mapping relationship between the PC5 QoS flow and the SLRB is sent to the peer UE through the PC5 interface SLRB configuration information, and the PC5 RRC message is sent (such as the PC5 AS configuration message), and the peer UE is mapped through each SLRB and PC5 QoS flow(s)
  • the relationship determines whether a certain PC5 QoS flow is remapped from one SLRB to another SLRB, and the source SLRB and the target SLRB of the PC5 QoS flow remap are identified.
  • the mapping relationship between PC5 QoS flow and SLRB on the source SLRB releases the mapping from PC5 QoS flow1 to the source SLRB, and the mapping relationship between PC5 QoS flow and SLRB on the target SLRB adds the mapping from PC5 QoS flow1 to the target SLRB.
  • the peer UE After receiving the PC5 QoS flow remapping configuration information sent by the sending UE, the peer UE determines whether to accept and send response/confirmation information to the sending UE, that is, the first communication node.
  • Another way is that the UE does not need to send the mapping relationship between each SLRB and PC5 QoS flow(s) to the peer UE. Only when a certain PC5 QoS flow is remapped, the PC5 RRC message such as the PC5 AS configuration
  • the identification information of the PC5 QoS flow that undergoes remapping, the identification information of the source SLRB, and the identification information of the target SLRB are sent to the opposite UE.
  • the identification information of the PC5 QoS flow is PFI or PQI or is identified by the corresponding PC5 QoS parameter/profile (that is, parameters/profile).
  • the identification information of the SLRB is the sidelink bearer identification or the logical channel identification corresponding to the SLRB.
  • Fig. 3 is a schematic diagram of communication node interaction provided by this application.
  • communication node interaction that is, the first communication node 31 and the second communication node 32 perform data interaction.
  • the first communication node 31 receives the direct link interface quality of service flow remapping configuration information from the base station, and then transmits the PC5 QoS flow remapping configuration information to the second communication node 32 to implement the remapping configuration.
  • the second communication node 32 feeds back the PC5 QoS flow remapping reception/confirmation to the first communication node, and the second communication node 32 submits the buffered data on the target SLRB to the upper layer until it receives the service quality of the direct link interface on the source SLRB The end of the logo.
  • the UE sends the identification information of the PC5 QoS flow where the remapping occurs, the identification information of the source SLRB, and the identification information of the target SLRB to the peer UE through the SL MAC CE.
  • Table 1 is the MAC CE format.
  • the quality of service flow identifier of the through link interface is PFI
  • the source through link bearer is original SLRB
  • the logical channel identifier is LC ID
  • the target SLRB is the new SLRB
  • the source SLRB (or corresponding logical channel identifier) (continued) ) Means original SLRB (LC ID) cont.
  • the PFI is 6 bits
  • the source SLRB (or the corresponding logical channel identifier) or the target SLRB (or the corresponding logical channel identifier) is 6 bits, but it is not limited to this.
  • the number of identification bits finally determined according to the standard constitutes the MAC CE.
  • the MAC CE byte is aligned, and the remaining bits are reserved bits.
  • the method further includes: receiving configuration information sent by the base station, the configuration information including the modified SLRB and the direct link interface quality of service flow mapping relationship; or, the configuration information includes the remapping occurred
  • the configuration information may be information sent by the base station to the first communication node for PC5 QoS flow remapping configuration.
  • the configuration information can be directly used as the remapping configuration information; or when the configuration information includes the modified mapping relationship between the SLRB and the quality of service flow of the through link interface, determine the quality of service flow of the through link interface where the remapping occurs.
  • the identification information, the identification information of the corresponding source SLRB and the identification information of the corresponding target SLRB are used as remapping configuration information.
  • the modified mapping relationship between the SLRB and the quality of service flow of the through link interface includes at least one of the following:
  • the mapping relationship of the link interface quality of service flow adds at least one new direct link interface quality of service flow that is mapped to the SLRB.
  • the modified mapping relationship between the SLRB and the quality of service flow of the through link interface can be that the PC5 QoS flow is removed from the mapping relationship of the source SLRB, and the PC5 QoS flow is added to the mapping relationship of the target SLRB.
  • the UE receives the PC5 QoS flow re-mapping configuration sent by the base station, that is, the configuration information.
  • the PC5 QoS flow re-mapping configuration sent by the base station can be embodied as: PC5 QoS flow is released from the source SLRB and PC5 QoS flow is added to the target SLRB; or, PC5 QoS flow re-mapping indication and original SLRB identification and new SLRB identification.
  • the PC5 QoS flow can be identified by PFI or PQI or the corresponding PC5 QoS parameter/configuration file.
  • the PC5 QoS parameter/configuration file includes at least one of the following information: PQI, GBR QoS flow GFBR and MFBR, non-GBR QoS flow PC5 link (i.e. link) AMBR, communication distance, i.e. communication range.
  • the method further includes:
  • an end flag is sent to the second communication node on the source SLRB, and the end flag indicates the The data transmission of the quality of service flow of the through link interface remapping on the source SLRB is completed.
  • the first communication node may send an end flag to the second communication node to instruct the second communication node to report the data of the quality of service flow of the through link interface that has been remapped and buffered on the target SLRB.
  • the end flag is a control type service data adaptation protocol data unit
  • the service data adaptation protocol data unit includes a service data adaptation protocol data unit control type indication and a corresponding direct link Road interface quality of service flow identification; or, the service data adaptation protocol protocol data unit includes a service data adaptation protocol protocol data unit control type indication.
  • the UE sends an end marker (that is, assembles end-marker SDAP PDU), and maps it to the source SLRB for transmission.
  • an end marker that is, assembles end-marker SDAP PDU
  • the SDAP PDU on the source SLRB and target SLRB where the PC5 QoS flow re-mapping occurs must contain the SDAP header ( That is, the header), the SDAP header includes the SDAP PDU type indication and the PC5 QoS flow identifier PFI corresponding to the SDAP SDU/PDU.
  • SDAP PDU type indication is 1bit.
  • PFI can be 6 bits, or other integer bits less than 8 bits.
  • SDAP PDU types include: control PDU or data PDU.
  • the control PDU is the end-marker SDAP PDU, indicating the end flag, which means that the data corresponding to the PFI mapped to the SLRB is ended.
  • the control PDU only contains the SDAP header and does not contain other payloads (ie payload).
  • the data PDU indicates the PFI to which the SDAP SDU mapped to the SLRB belongs and the specific data payload.
  • Table 2 is a control SDAP PDU (end-marker SDAP PDU) format.
  • Table 2 A control SDAP PDU (end-marker SDAP PDU) format
  • reserved means reserved bits (that is, reserved bits).
  • the SDAP PDU does not need to include PFI information so that the receiving UE can recognize different PC5 QoS flow data.
  • the end marker can be indicated by only 1bit SDAP PDU type.
  • Table 3 is another control SDAP PDU (end-marker SDAP PDU) format.
  • a control SDAP PDU/end-marker SDAP PDU format where R represents a reserved bit (that is, reserved bit).
  • R represents a reserved bit (that is, reserved bit).
  • the receiving UE receives the QoS flow data on the target SLRB before receiving the end of the QFI on the source SLRB, temporarily buffer it (for example, buffer it in the PDCP buffer or buffer) and not submit it to the upper layer.
  • the end of the QFI control/end-marker SDAP PDU
  • the temporarily cached data of the QFI on the target SLRB will be submitted to the upper layer to ensure that the sequential data packet is delivered to the upper layer .
  • the source SLRB does not receive the latest PDCP SN (latest PDCP SN) +1)
  • the receiving UE receives the PC5 QoS flow data on the target SLRB, it will be temporarily buffered (for example, buffered in the PDCP buffer) and not to the upper layer
  • the temporarily cached PC5 QoS flow data on the target SLRB is submitted to the upper layer. So as to ensure the delivery of sequential data packets to the upper layer.
  • the method further includes:
  • the SLRB configuration information may be information sent by the first communication node to the second communication node for configuring the SLRB of the second communication node.
  • the SLRB configuration information includes: parameters that need to be consistent by the second communication node; or, the SLRB configuration information includes: parameters that need to be consistent by the second communication node and parameters used only by the second communication node; or, the SLRB configuration information includes : The second communication node needs to maintain consistent parameters and the mapping relationship between PC5 QoS flow and SLRB.
  • the SLRB configuration information includes: a mapping relationship between the quality of service flow of the through link interface and the SLRB.
  • the SLRB configuration information includes at least one of the following: reordering timer parameters, non-sequential delivery instructions, reassembly timer parameters, and status report prohibition timer parameters.
  • part of the SLRB configuration parameters of the receiving UE are configured by the sending UE to the receiving UE.
  • the sending UE may be the first communication node.
  • the receiving UE may be the second communication node.
  • the sending UE sends the same parameters of the UEs (the sending UE and the receiving UE) that need unicast communication to the receiving UE, and only the parameters used by the receiving end are implemented by the receiving UE itself.
  • the parameters that need to be consistent for the UEs in unicast communication include at least one of the following: PDCP SN size, header compression section (ie header compression paras (maxCID, rohc profiles)), confirmation mode sequence number field length (ie sn-FieldLengthAM) , The non-acknowledged mode sequence number field length (sn-FieldLengthUM) and the downlink logical link identifier (ie LCH id).
  • the sending UE sends the same parameters of the UE requiring unicast communication and the parameters used only by the receiving end to the receiving UE, and the receiving UE configures the SLRB receiving parameters according to the configuration of the sending UE.
  • the parameters used only by the receiving end include at least one of the following: reordering timer parameters (ie t-Reordering), out of order delivery instructions (ie outOfOrderDelivery), reorganization timer parameters (ie t-Reassembly), and status report prohibit timer Parameters (ie t-statusprohibit(for RLC AM)).
  • outOfOrderDelivery indicates whether the receiving UE can deliver data packets to the upper layer out of order. If so, the receiving UE PDCP does not need to perform the reordering function; t-Reordering is the reordering timer; t-Reassembly is the reassembly timer.
  • Another way is that the sending UE sends the UE that needs unicast communication the same parameters and the mapping relationship between PC5 QoS flow and SLRB to the receiving UE, and the receiving UE combines the PC5 QoS flow obtained from the PC5 information, that is, the signaling message.
  • PC5 QoS parameters configure the SLRB receiving parameters.
  • the method further includes:
  • the SLRB configuration information sent by the base station is received, and the SLRB configuration information sent by the base station includes the through unicast link identifier associated with the SLRB, or the target layer 2 identifier index associated with the SLRB; wherein the target layer 2 identifier index associated with the SLRB is based on the through The serialized index number of the entry identified by the target layer 2 in the link user information.
  • this application also provides a data transmission method
  • FIG. 4 is a schematic flowchart of another data transmission method provided by this application.
  • This method can be applied to the situation where the receiving end delivers orderly to the upper layer when remapping (ie re-mapping) occurs in the QoS flow of the direct link interface, that is, the PC5 QoS flow.
  • the method can be executed by the data transmission device provided in the present application, and the data transmission device can be implemented by software and/or hardware and integrated on the second communication node.
  • the second communication node may be the receiving end.
  • the data transmission method provided by this application includes S410-S430.
  • the remapping configuration information may be used to indicate the quality of service flow of the through link interface where the first communication node is remapped.
  • the first communication node determines to send the remapped through link interface quality of service flow based on the remapping configuration information, and ensures the orderly delivery of data of the through link interface quality of service flow.
  • S420 Based on the remapping configuration information, determine the quality of service flow of the through link interface where the remapping occurs, the corresponding source SLRB and the corresponding target SLRB.
  • the mapping relationship between the modified SLRB and the quality of service flow of the through link interface can be traversed to determine the PC5 QoS where the remapping occurs Flow; and then identify the source SLRB and target SLRB of the PC5 QoS flow to be remapped.
  • the remapping configuration information includes the identification information of the quality of service flow of the through link interface where the remapping occurred, the identification information of the corresponding source SLRB, and the identification information of the corresponding target SLRB, the corresponding identification information can be determined according to the identification information.
  • the through link interface service can be provided on the source SLRB corresponding to the quality of service flow of the through link interface where the remapping occurs.
  • the completion of the data transmission of the quality of service flow of the through link interface on the source SLRB may be determined by the second communication node, or may be determined based on the end flag transmitted by the first communication node.
  • the data transmission method provided by the present application receives remapping configuration information sent by a first communication node; based on the remapping configuration information, determining the quality of service flow of the through link interface where remapping occurs, the corresponding source SLRB, and the corresponding Target SLRB; in the case where the data transmission of the quality of service flow of the through link interface on the source SLRB is completed, the data of the quality of service flow of the through link interface on the target SLRB is transmitted to solve the second communication
  • the technical problem of the non-sequential delivery of nodes to the upper layer effectively ensures the orderly delivery of the second communication node to the upper layer and improves the reliability of data transmission.
  • the remapping configuration information includes the modified mapping relationship between the SLRB and the quality of service flow of the through link interface.
  • the modified mapping relationship between the SLRB and the quality of service flow of the through link interface includes at least one of the following:
  • the mapping relationship of the link interface quality of service flow adds at least one new direct link interface quality of service flow that is mapped to the SLRB.
  • the remapping configuration information includes identification information of the quality of service flow of the through link interface where remapping occurs, identification information of the corresponding source SLRB, and identification information of the corresponding target SLRB.
  • the identification information of the quality of service flow of the through link interface that undergoes remapping is: the quality of service flow identifier of the through link interface, the 5G quality of service identifier on the through link interface, and the quality of service of the through link interface Parameter or quality of service profile of the through link interface.
  • the identification information of the source SLRB is the source SLRB identification or the logical channel identification corresponding to the source SLRB; the identification information of the target SLRB is the target SLRB identification or the logical channel identification corresponding to the target SLRB.
  • the completion of data transmission of the quality of service flow of the through link interface on the source SLRB includes:
  • the second communication node may determine whether the transmission of the data of the quality of service flow of the through link interface is completed by whether the end flag sent by the first communication node is received.
  • the end flag may indicate that the data transmission of the quality of service flow of the through link interface where the remapping occurs on the source SLRB is completed.
  • the completion of data transmission of the quality of service flow of the through link interface on the source SLRB includes:
  • the source SLRB does not receive the data packet corresponding to the updated packet data convergence protocol sequence number and the corresponding packet data convergence protocol reordering timer expires.
  • the method before the data transmission of the quality of service flow of the through link interface on the source SLRB is completed, the method further includes:
  • the receiving UE receives the QoS flow data on the target SLRB before receiving the end of the QFI on the source SLRB, temporarily buffer it (for example, buffer it in the PDCP buffer) and not submit it to the upper layer.
  • the end of the QFI control/end-marker SDAP PDU
  • the temporarily cached data of the QFI on the target SLRB will be submitted to the upper layer to ensure that the sequential data packet is delivered to the upper layer .
  • the source SLRB does not receive the latest PDCP SN (latest PDCP SN) +1)
  • the receiving UE receives the PC5QoS flow data on the target SLRB, it will be temporarily buffered (for example, buffered in the PDCP buffer) and not delivered to the upper layer.
  • the temporarily buffered PC5 QoS flow data on the target SLRB is submitted to the upper layer to ensure Submit sequential data packets to the upper layer.
  • the method further includes:
  • the second communication node may perform SLRB configuration based on the SLRB configuration information sent by the first communication node.
  • the SLRB configuration information includes: a mapping relationship between the quality of service flow of the through link interface and the SLRB.
  • the SLRB configuration information includes at least one of the following: reordering timer parameters, non-sequential delivery instructions, reassembly timer parameters, and status report prohibition timer parameters.
  • FIG. 5 is a schematic structural diagram of a data transmission device provided in this application.
  • a data transmission device in an embodiment of the present application is configured on a first communication node.
  • the device includes: a determining module 51 configured to determine remapping configuration information, where the remapping configuration information indicates that remapping occurs The mapped through link interface quality of service flow, the corresponding source through link bears the SLRB and the corresponding target SLRB; the sending module 52 is configured to send the remapping configuration information to the second communication node.
  • the data transmission device provided in this embodiment is used to implement the data transmission method applied to the first communication node.
  • the implementation principles and technical effects of the data transmission device provided in this embodiment are similar to the data transmission method applied to the first communication node. No longer.
  • the remapping configuration information in the determining module 51 includes the modified mapping relationship between the SLRB and the quality of service flow of the through link interface.
  • the remapping configuration information in the determining module 51 includes identification information of the quality of service flow of the through link interface where remapping occurs, identification information of the corresponding source SLRB, and identification information of the corresponding target SLRB.
  • the identification information of the quality of service flow of the through link interface that is remapped in the determining module 51 is: the quality of service flow identification of the through link interface, the 5G quality of service identification on the through link interface, and the through link Interface quality of service parameters or through-link interface quality of service profile.
  • the identification information of the source SLRB in the determining module 51 is the source SLRB identification or the logical channel identification corresponding to the source SLRB; the identification information of the target SLRB is the target SLRB identification or the target SLRB Logical channel identifier.
  • the device further includes: a receiving module configured to receive configuration information sent by the base station, the configuration information including the modified SLRB mapping relationship with the direct link interface quality of service flow; or, the configuration The information includes the identification information of the quality of service flow of the through link interface where the remapping occurs, the identification information of the corresponding source SLRB, and the identification information of the corresponding target SLRB.
  • the modified mapping relationship between the SLRB and the quality of service flow of the through link interface in the receiving module includes at least one of the following: deleting at least one of the existing quality of service flows of the through link interface mapped to the SLRB Direct link interface quality of service flow, adding a new mapping relationship between SLRB and through link interface quality of service flow, and adding at least one new through mapping to SLRB in the existing mapping relationship between SLRB and through link interface quality of service flow Link interface quality of service flow.
  • the sending module is configured to: send the remapping configuration information to the second communication node through a direct link radio resource control message; or, to the second communication through a direct link media access control-control element The node sends the remapping configuration information.
  • the device further includes: an end flag sending module, which is set to transmit data of the quality of service flow of the direct link interface where the remapping occurs on the source SLRB is completed, in the case that the The source SLRB sends an end flag to the second communication node, where the end flag indicates that the data transmission of the quality of service flow of the direct link interface on which the remapping occurs on the source SLRB is completed.
  • an end flag sending module which is set to transmit data of the quality of service flow of the direct link interface where the remapping occurs on the source SLRB is completed, in the case that the The source SLRB sends an end flag to the second communication node, where the end flag indicates that the data transmission of the quality of service flow of the direct link interface on which the remapping occurs on the source SLRB is completed.
  • the end flag in the end flag sending module is a control type service data adaptation protocol data unit
  • the service data adaptation protocol data unit includes a service data adaptation protocol protocol data unit control type indicator And the corresponding direct link interface quality of service flow identifier; or, the service data adaptation protocol protocol data unit includes a service data adaptation protocol protocol data unit control type indication.
  • the device further includes:
  • the SLRB configuration information sending module is configured to send SLRB configuration information to the second communication node.
  • the SLRB configuration information in the SLRB configuration information sending module includes: a mapping relationship between the quality of service flow of the through link interface and the SLRB.
  • the SLRB configuration information in the SLRB configuration information sending module includes at least one of the following: a reordering timer parameter, an out-of-sequence delivery instruction, a reorganization timer parameter, and a status report prohibit timer parameter.
  • the device further includes:
  • the SLRB configuration information receiving module is configured to receive the SLRB configuration information sent by the base station.
  • the SLRB configuration information sent by the base station includes the SLRB-associated through unicast link identifier, or the SLRB-associated target layer 2 identifier index; among them, the SLRB-associated
  • the target layer 2 identification index is an index number serialized according to the entry sequence of the target layer 2 identification in the through link user information.
  • FIG. 6 is a schematic structural diagram of another data transmission device provided by this application.
  • the data transmission device is configured at a second communication node.
  • the device includes: receiving The module 61 is configured to receive the remapping configuration information sent by the first communication node; the determining module 62 is configured to determine, based on the remapping configuration information, the quality of service flow of the through link interface where the remapping occurs, the corresponding source SLRB and the corresponding The target SLRB; the transmission module 63 is configured to transmit the quality of service flow of the through link interface on the target SLRB when the data transmission of the through link interface quality of service flow on the source SLRB is completed data.
  • the data transmission device provided in this embodiment is used for the data transmission method applied to the second communication node.
  • the implementation principles and technical effects of the data transmission device provided in this embodiment are similar to the data transmission method applied to the second communication node. Repeat it again.
  • the remapping configuration information in the receiving module 61 includes the modified mapping relationship between the SLRB and the quality of service flow of the through link interface.
  • the modified mapping relationship between the SLRB and the QoS flow of the through link interface in the receiving module 61 includes at least one of the following: delete at least one of the existing QoS flows of the through link interface mapped to the SLRB A through link interface quality of service flow, adding a new mapping relationship between SLRB and through link interface quality of service flow, and adding at least one new mapping to SLRB in the existing mapping relationship between SLRB and through link interface quality of service flow Quality of service flow through the link interface.
  • the remapping configuration information in the receiving module 61 includes identification information of the quality of service flow of the through link interface where remapping occurs, identification information of the corresponding source SLRB, and identification information of the corresponding target SLRB.
  • the identification information of the quality of service flow of the through link interface that has undergone remapping in the receiving module 61 is: the quality of service flow identifier of the through link interface, the 5G quality of service identifier on the through link interface, and the through link Interface quality of service parameters or through-link interface quality of service profile.
  • the identification information of the source SLRB in the receiving module 61 is the source SLRB identification or the logical channel identification corresponding to the source SLRB; the identification information of the target SLRB is the target SLRB identification or the corresponding Logical channel identifier.
  • the completion of data transmission of the quality of service flow of the through link interface on the source SLRB in the transmission module 63 includes: receiving an end flag sent by the first communication node, the end flag indicating the The data transmission of the quality of service flow of the through link interface on the source SLRB is completed.
  • the completion of the data transmission of the quality of service flow of the through link interface on the source SLRB in the transmission module 63 includes: the source SLRB has not received the data packet corresponding to the updated packet data convergence protocol sequence number and The corresponding packet data convergence protocol reordering timer expires.
  • the device further includes: a first buffer module configured to receive the direct link interface quality of service flow on the source SLRB before the completion of the data transmission of the direct link interface
  • a first buffer module configured to receive the direct link interface quality of service flow on the source SLRB before the completion of the data transmission of the direct link interface
  • the data of the quality of service flow of the link interface is buffered in the packet data convergence protocol receiving buffer or the service data adapting protocol receiving buffer, without the upper transmission.
  • the device further includes: an SLRB configuration information receiving module, configured to receive the SLRB configuration information sent by the first communication node.
  • the SLRB configuration information in the SLRB configuration information receiving module includes: a mapping relationship between the quality of service flow of the through link interface and the SLRB.
  • the SLRB configuration information in the SLRB configuration information receiving module includes at least one of the following: a reordering timer parameter, an out-of-sequence delivery instruction, a reorganization timer parameter, and a status report prohibition timer parameter.
  • FIG. 7 is a schematic structural diagram of the first communication node provided by this application.
  • the first communication node provided by the present application includes one or more processors 71 and storage devices 72; the processors 71 in the first communication node may be one or more, as shown in FIG.
  • the processor 71 is taken as an example; the storage device 72 is used to store one or more programs; the one or more programs are executed by the one or more processors 71, so that the one or more processors 71 implement Apply for the data transmission method described in the embodiment.
  • the processor 71 and the storage device 72 in the first communication node may be connected by a bus or in other ways.
  • the connection by a bus is taken as an example.
  • the storage device 72 can be configured to store software programs, computer-executable programs, and modules, such as program instructions/modules corresponding to the data transmission method described in the embodiments of the present application (for example, the data transmission device The determination module 51 and the sending module 52).
  • the storage device 72 may include a storage program area and a storage data area.
  • the storage program area may store an operating system and an application program required by at least one function; the storage data area may store data created according to the use of the device and the like.
  • the storage device 72 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other non-volatile solid-state storage devices.
  • the storage device 72 may include a memory remotely provided with respect to the processor 71, and these remote memories may be connected to the device through a network.
  • networks include but are not limited to the Internet, corporate intranets, local area networks, mobile communication networks, and combinations thereof.
  • FIG. 8 is a schematic structural diagram of a second communication node provided by this application.
  • the second communication node provided by the present application includes one or more processors 81 and a storage device 82; the processors 81 in the second communication node may be one or more, as shown in FIG.
  • the processor 81 is taken as an example; the storage device 82 is used to store one or more programs; the one or more programs are executed by the one or more processors 81, so that the one or more processors 81 implement the same Apply for the data transmission method described in the embodiment.
  • the processor 81 and the storage device 82 in the terminal may be connected by a bus or other methods.
  • the connection by a bus is taken as an example.
  • the storage device 82 can be configured to store software programs, computer-executable programs, and modules, such as program instructions/modules corresponding to the data transmission method described in the embodiments of the present application (for example, the data transmission device The receiving module 61, the determining module 62 and the transmitting module 63).
  • the storage device 82 may include a program storage area and a data storage area.
  • the program storage area may store an operating system and an application program required by at least one function; the data storage area may store data created according to the use of the device, and the like.
  • the storage device 82 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other non-volatile solid-state storage devices.
  • the storage device 82 may include a memory remotely provided with respect to the processor 81, and these remote memories may be connected to the device through a network. Examples of the aforementioned networks include, but are not limited to, the Internet, corporate intranet, local area network, mobile communication network, and combinations thereof.
  • the embodiment of the present application further provides a storage medium, the storage medium stores a computer program, and the computer program implements the data transmission method described in any of the embodiments of the present application when the computer program is executed by a processor.
  • the data transmission method applied to the first communication node and the data transmission method applied to the second communication node wherein the data transmission method applied to the first communication node includes: determining remapping configuration information, where the remapping configuration information indicates The quality of service flow of the through link interface where remapping occurs, the corresponding source through link bears the SLRB and the corresponding target SLRB; and the remapping configuration information is sent to the second communication node.
  • the data transmission method applied to the second communication node includes: receiving the remapping configuration information sent by the first communication node; based on the remapping configuration information, determining the quality of service flow of the through link interface where the remapping occurs, the corresponding source SLRB, and Corresponding target SLRB; in the case where data transmission of the quality of service flow of the through link interface on the source SLRB is completed, transmit the data of the quality of service flow of the through link interface on the target SLRB.
  • terminal encompasses any suitable type of wireless user equipment, such as mobile phones, portable data processing devices, portable web browsers, or vehicle-mounted mobile stations.
  • the various embodiments of the present application can be implemented in hardware or dedicated circuits, software, logic or any combination thereof.
  • some aspects may be implemented in hardware, while other aspects may be implemented in firmware or software that may be executed by a controller, microprocessor or other computing device, although the application is not limited thereto.
  • the embodiments of the present application may be implemented by executing computer program instructions by a data processor of a mobile device, for example, in a processor entity, or by hardware, or by a combination of software and hardware.
  • Computer program instructions can be assembly instructions, instruction set architecture (Instruction Set Architecture, ISA) instructions, machine instructions, machine-related instructions, microcode, firmware instructions, state setting data, or written in any combination of one or more programming languages Source code or object code.
  • the block diagram of any logical flow in the drawings of the present application may represent program steps, or may represent interconnected logic circuits, modules, and functions, or may represent a combination of program steps and logic circuits, modules, and functions.
  • the computer program can be stored on the memory.
  • the memory can be of any type suitable for the local technical environment and can be implemented by any suitable data storage technology, such as but not limited to read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), optical Memory devices and systems (Digital Video Disc (DVD) or Compact Disk (CD)), etc.
  • Computer-readable media may include non-transitory storage media.
  • the data processor can be any type suitable for the local technical environment, such as but not limited to general-purpose computers, special-purpose computers, microprocessors, digital signal processors (Digital Signal Processing, DSP), application specific integrated circuits (ASICs) ), programmable logic devices (Field-Programmable Gate Array, FGPA), and processors based on multi-core processor architecture.
  • DSP Digital Signal Processing
  • ASICs application specific integrated circuits
  • FGPA programmable logic devices
  • This application also provides a method for requesting direct link communication resources, which specifically includes the following examples:
  • a method for requesting direct link communication resources, applied to user equipment including:
  • the base station For connected UEs that are interested or no longer interested in sidelink communication transmission or reception, the base station needs to be notified to request the base station to allocate or release sidelink communication resources. Specifically, the base station is notified by triggering the UE to send through link user equipment information, that is, sidelinkUEInformation. This embodiment considers the triggering condition of sidelinkUEInformation based on the characteristics of NR sidelink communication.
  • the through link communication of the user equipment can be divided into unicast, broadcast, and multicast. Different direct link communications can correspond to different trigger timings.
  • the content of the corresponding through link user equipment information can be determined and sent to instruct the base station to perform communication resource processing. Different trigger occasions may correspond to different content of the through link user equipment information.
  • the step of determining the timing of triggering the sending of the through link user equipment information in the above method for requesting through link communication resources includes:
  • the upper layer of the user equipment is configured to perform V2X direct link communication reception, and the user equipment obtains a valid V2X system information block from the system message of the serving cell;
  • the direct link user equipment information is not sent to the base station, or
  • the system information of the serving cell that the user equipment has connected to since the last time the through link user equipment information was sent does not include the V2X system information block or the V2X system information block does not include V2X communication general configuration information, or
  • the last time the direct link user equipment information was sent does not contain the business target information or frequency point information that you are interested in receiving, or
  • the transmission of the direct link user equipment information is triggered.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the direct link user equipment information includes service target or frequency point information of the V2X direct link communication that is interested in receiving.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the upper layer of the user equipment is configured to perform V2X direct link communication reception, and the user equipment obtains a valid V2X system information block from the system message of the serving cell;
  • the information received in the upper layer configuration of the user equipment for V2X direct link communication no longer includes the service target or frequency point information of the V2X direct link communication that has been previously sent in the direct link user equipment information. In this case, the sending of the through link user equipment information is triggered.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the direct link user equipment information does not include service target or frequency information of the V2X direct link communication that is not interested in receiving.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the upper layer configuration of the user equipment performs V2X direct link communication transmission, and the user equipment obtains a valid V2X system information block from the system message of the serving cell;
  • the user equipment has not sent the direct link user equipment information to the base station since entering the connected state, or
  • the system information of the serving cell that the user equipment has connected to since the last time the through link user equipment information was sent does not include the V2X system information block or the V2X system information block does not include V2X communication general configuration information, or
  • the last time the through link user equipment information was sent does not include V2X through link communication sending resource request information, or
  • the sending of the direct link user equipment information is triggered to indicate the request for the V2X direct link communication sending resource.
  • the information in the V2X direct link communication sending resource request in the above-mentioned method for requesting direct link communication resources includes at least one of the following: a new service type data transmission, a service A new type of quality of service data stream transmission is added to the type, a source identifier and a destination identifier are added for data transmission, and a source identifier and destination identifier are added for a direct link interface quality of service data stream transmission. Send newly added data on one frequency.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the through link user equipment information includes at least one of the following: a newly added destination identifier of a service type, a newly added service quality data flow identifier in a service type, and a newly added source identifier and destination Identifier, a newly added direct link interface quality of service data stream in a source identifier and a destination identifier, and a newly added frequency point.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the upper layer configuration of the user equipment performs V2X direct link communication transmission, and the user equipment obtains a valid V2X system information block from the system message of the serving cell;
  • V2X direct link communication on the upper layer of the user equipment to no longer send a service type or a direct link interface quality of service flow that is no longer sent on a service type, or no longer send data with a source identification and a destination identification Or a direct link interface quality of service flow that is no longer sent on a source identifier and a destination identifier or the service type or direct link quality of service flow is not transmitted on a frequency point, triggering the transmission of the direct link user equipment Information indicating that the corresponding V2X direct link communication transmission resources are no longer needed.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the through link user equipment information does not include at least one of the following: first target data that is no longer sent or a frequency point at which the first target data is no longer sent, and the first target data includes: one that is no longer sent A kind of service type or a kind of direct link interface quality of service flow that is no longer sent on a service type or a source ID and destination ID data that is no longer sent or a source ID and a destination ID no longer sent Link interface quality of service flow.
  • the V2X direct link communication in the foregoing method for requesting direct link communication resources includes: V2X direct link broadcast communication or V2X direct link multicast communication.
  • SIB V2X System Information Block
  • the upper layer of the UE is configured to receive V2X sidelink broadcast/multicast communication (for example, the UE V2X layer indicates to receive data of a certain service type/service target/destination ID), then there are two operations as follows:
  • the UE has not sent the direct link user equipment information since entering the connected state, that is, sidelinkUEInformation to the base station; or, if the system broadcast message of the serving cell that the UE has connected to since the last time the sidelinkUEInformation was sent does not include V2X SIB or V2X SIB Does not contain V2X communication general configuration information; or, if the sidelinkUEInformation sent last time does not contain the destination ID information or frequency information of the service that you are interested in receiving; or, if the upper layer configures the service to be received after the sidelinkUEInformation was sent last time
  • the destination (destination ID) or frequency information changes, and the UE triggers the sending of sidelinkUEInformation information to the base station to indicate the destination (destination ID) or frequency information of the V2X sidelink broadcast/groupcast communication that it is interested in receiving.
  • the UE triggers the sending of sidelink UE Information information to the base station to indicate the business destination (destination ID) or frequency information of the V2X sidelink broadcast/groupcast communication that is no longer interested in receiving.
  • the UE If the UE has not sent sidelinkUEInformation to the base station since it entered the connected state, or if the system broadcast message of the serving cell that the UE has connected to since sending sidelinkUEInformation last time does not include V2X SIB or V2X SIB does not include V2X communication general configuration information, or If the sidelink UEInformation sent last time does not contain the V2X sidelink broadcast/multicast communication sending resource request information, or if the information in the V2X sidelink broadcast/groupcast communication sending resource request changes after the sidelink UEInformation was sent last time, the UE triggers the sending of sidelink UEInformation information to The base station indicates to request V2X sidelink broadcast/multicast communication transmission resources.
  • the information in the V2X sidelink broadcast/multicast communication sending resource request has changed, including at least one of the following: newly added for a certain service type (destination ID) data transmission, a certain service type (destination ID) new A new type of quality of service data flow (PC5 QoS flow) transmission is added, and data transmission for a source and destination (source ID-destination ID) is added, that is, the data transmission of the source identification and the destination identification, a certain source and destination (source In ID-destination ID), a new quality of service data flow (PC5 QoS flow) transmission is added, and a certain type of service data is newly transmitted on a certain frequency point.
  • Source ID and destination ID come from the upper layer (V2X layer), which is the Layer 2 identifier (L2 ID) allocated to the upper layer.
  • the sent sidelinkUEInformation includes V2X sidelink broadcast/multicast communication sending resource request and it includes a certain service type (destination ID) or a certain source and destination (source ID-destination ID) or a PC5 QoS flow Or at a certain frequency
  • the upper layer of the UE is configured with V2X sidelink broadcast/multicast communication, it no longer sends (releases) a certain service type (destination ID) or no longer sends a certain PC5 QoS flow on a certain service destination (destination ID) Or no longer send data of a certain source and destination (source ID-destination ID) or no longer send a certain PC5 QoS flow on a certain source and destination (source ID-destination ID) or not send on a certain frequency point,
  • the UE triggers the sending of sidelinkUEInformation information to the base station to indicate that the corresponding V2X sidelink broadcast/multicast communication transmission resources are no longer needed.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the user equipment upper layer is configured to perform V2X direct link unicast communication reception, and the user equipment obtains a valid V2X system information block from the system message of the serving cell under;
  • the user equipment has not sent the direct link user equipment information to the base station since it entered the connected state, or
  • the system message of the serving cell that the user equipment has connected to since the last time the direct link user equipment information was sent does not include the V2X system information block or the V2X system information block does not include V2X communication general configuration information, or
  • the direct link user equipment information sent last time does not contain the peer user equipment information or frequency point information that you are interested in receiving, or
  • the sending of through link user equipment information is triggered to indicate the V2X through link that is interested in receiving Unicast communication peer user equipment information or frequency point information.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the direct link user equipment information includes peer user equipment information or frequency point information of the V2X direct link unicast communication that is interested in receiving.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the user equipment upper layer is configured to perform V2X direct link unicast communication reception, and the user equipment obtains a valid V2X system information block from the system message of the serving cell under;
  • the information received in the upper layer configuration of the user equipment for V2X direct link unicast communication no longer includes the peer user interested in receiving the V2X direct link unicast communication that has been previously sent in the direct link user equipment information.
  • device information or frequency point information In the case of device information or frequency point information,
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the direct link user equipment information does not include peer user equipment information or frequency point information of the V2X direct link unicast communication that is no longer interested in receiving.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the user equipment upper layer is configured to perform V2X direct link unicast communication transmission, and the user equipment obtains a valid V2X system information block from the system message of the serving cell under;
  • the user equipment has not sent through link user equipment information to the base station since it entered the connected state, or
  • the system message of the serving cell that the user equipment has connected to since the last time the direct link user equipment information was sent does not include the V2X system information block or the V2X system information block does not include V2X communication general configuration information, or
  • the last sent through link user equipment information does not contain V2X through link unicast communication sending resource request information, or
  • Trigger to send through link user equipment information, and instruct to request V2X through link unicast communication transmission resources.
  • the information in the V2X direct link unicast communication transmission resource request in the above-mentioned direct link communication resource request method has changed, and includes at least one of the following: a new transmission of data for a peer user equipment , For a new transmission of a quality of service data stream on a peer user equipment, a new data transmission for a source identification and a destination identification, a new data transmission for a direct unicast link identification, for a direct order
  • the transmission of a quality of service data stream is added to the broadcast link identifier, the source identifier and the destination identifier are added to the transmission of a quality of service data stream, and the data to the opposite user equipment is added on a frequency point. send.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the through link user equipment information includes at least one of the following: a newly added peer user equipment, a newly added quality of service data stream on a peer user equipment, a newly added source identifier and destination identifier, source A new quality of service data stream in the identifier and destination identifier, a new through unicast link identifier, a new quality of service data stream on a through unicast link identifier, and a new frequency point .
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the user equipment upper layer is configured to perform V2X direct link unicast communication transmission, and the user equipment obtains a valid V2X system information block from the system message of the serving cell under;
  • V2X direct link unicast communication on the upper layer of the user equipment to no longer send data to a peer user equipment, or no longer send a direct link interface quality of service flow to the peer user equipment, or no longer send a source identifier and
  • the destination identifier sends data or no longer sends a through link interface quality of service flow to the source identifier and the destination identifier, or no longer sends data for a through unicast link identifier or no longer sends a through unicast link identifier.
  • Trigger sending of the through link user equipment information, indicating that the corresponding V2X through link unicast communication transmission resource is no longer needed.
  • the determination of the content of the through-link user equipment information in the above-mentioned through-link communication resource request method includes:
  • the through link user equipment information does not include at least one of the following: second target data that is no longer sent or a frequency point at which the second target data is no longer sent, and the second target data includes: Data sent by the peer user equipment or a direct link interface quality of service flow that is no longer sent to the peer user equipment, or data that is no longer sent to a source identification and destination identification, or is no longer sent to the source identification and destination identification
  • V2X sidelink unicast communication if the UE obtains a valid V2X SIB from the system broadcast message of the serving cell,
  • the upper layer of the UE is configured to receive V2X sidelink unicast communication (for example, the UE V2X layer indicates to receive data from a certain peer UE (destination ID)),
  • the UE If the UE has not sent sidelinkUEInformation to the base station since it entered the connected state; or, if the system broadcast message of the serving cell that the UE has connected to since sending sidelinkUEInformation last time does not include V2X SIB or V2X SIB does not include V2X communication general configuration information; Or, if the sidelinkUEInformation sent last time does not contain the destination ID information or frequency information that you are interested in receiving; or, if the destination ID information (destination ID) configured by the upper layer for reception after the sidelink UEInformation was sent last time Or the frequency point information has changed, and the UE triggers the sending of sidelinkUEInformation information to the base station to indicate the destination ID or frequency point information of the V2X sidelink Unicast communication that is interested in receiving.
  • the sent sidelinkUEInformation contains the destination ID or frequency information of the V2X sidelink unicast communication that you are interested in receiving, if the upper layer of the UE is configured for V2X sidelink unicast communication, the received information no longer contains a certain peer UE (destination ID). ID) or frequency point information, the UE triggers the sending of sidelinkUEInformation information to the base station to indicate to the base station that it is no longer interested in receiving the peer UE (destination ID) or frequency point information of the V2X sidelink unicast communication.
  • Destination ID is the L2 ID of the peer UE.
  • the UE If the UE has not sent sidelinkUEInformation to the base station since it entered the connected state, or if the system broadcast message of the serving cell that the UE has connected to since sending sidelinkUEInformation last time does not include V2X SIB or V2X SIB does not include V2X communication general configuration information, or If the sidelink UEInformation sent last time does not contain the V2X sidelink unicast communication sending resource request information, or if the information in the V2X sidelink unicast communication sending resource request changes after the sidelink UEInformation was sent last time, the UE triggers the sending of sidelinkUEInformation information to the base station to indicate the request for V2X sidelink Unicast communication transmission resources.
  • the information in the V2X sidelink unicast communication sending resource request has changed, including at least one of the following: new transmission of data for a certain peer UE (destination ID), and new data for a certain peer UE (destination ID)
  • Add a kind of quality of service data flow (PC5 QoS flow) transmission add data transmission for a source and destination (source ID-destination ID), and add a source and destination (source ID-destination ID)
  • the transmission of the quality of service data flow (PC5 QoS flow) is newly added to transmit data of a certain peer UE on a certain frequency point.
  • the newly sent peer UE comes from the upper layer's instructions.
  • the source ID and destination ID come from the upper layer and are the L2 ID allocated to the upper layer.
  • the opposite end UE is identified by destination ID/destination L2 ID, that is, the L2 ID of the opposite end UE.
  • the sent sidelinkUEInformation contains V2X sidelink unicast communication sending resource request and it contains a certain peer UE (destination ID) or a certain source and destination (source ID-destination ID) or a certain PC5 QoS flow or a certain frequency point
  • the upper layer of the UE configures V2X sidelink unicast communication, it no longer sends data to a certain peer UE (destination ID) or no longer sends a PC5 QoS flow to a certain peer UE (destination ID) or no longer sends a certain PC5 QoS flow to a certain source and
  • the destination (source ID-destination ID) sends data or no longer sends a certain PC5 QoS flow to a certain source and destination (source ID-destination ID) or does not send it on a certain frequency
  • the UE triggers the sending of sidelinkUEInformation information to the base station to indicate not Then the corresponding V2X sidelink unicast communication transmission resources are needed.
  • the determination of the timing for triggering the sending of the through link user equipment information in the foregoing method for requesting direct link communication resources includes:
  • the sending of the through link user equipment information is triggered to indicate the request for sending resources of the through link unicast communication.
  • the through-link user equipment information in the above-mentioned through-link communication resource request method includes at least one of the following: unicast communication target layer 2 identifier, unicast communication type, source layer 2 identifier, and unicast Communication target layer 2 identification, direct link interface signaling radio bearer or direct link interface radio resource control signaling indication, direct unicast link identification, direct unicast link identification, or unicast communication target layer 2 identification or source layer 2 ID and unicast communication target layer 2 ID of the direct link interface quality of service flow information.
  • the through-link user equipment information in the above-mentioned through-link communication resource request method includes at least one of the following: unicast communication target layer 2 identifier, unicast communication type, source layer 2 identifier, and unicast Communication target layer 2 identifier, direct unicast link identifier, direct link interface signaling radio bearer or direct link interface radio resource control signaling indication; correspondingly, it also includes:
  • the base station When the user equipment capability interaction is completed or the direct link interface radio resource control connection is established, the base station sends the direct unicast link identifier or the unicast communication target layer 2 identifier or the source layer 2 identifier and the unicast link to the base station. Broadcast the through link user equipment information of the through link interface quality of service flow information in the communication target layer 2 identification.
  • the through-link interface quality of service flow information in the above-mentioned through-link communication resource request method includes: through-link interface quality of service flow identification, through-link interface quality of service parameters or configuration files.
  • the foregoing method for requesting direct link communication resources further includes:
  • the direct link bearer configuration information sent by the base station includes: a direct unicast link identifier associated with the direct link bearer, or a target layer 2 identifier index associated with the direct link bearer;
  • the target layer 2 identification index associated with the through link bearer is an index number serialized according to the entry sequence of the target layer 2 identification in the through link user information.
  • FIG. 9 is a schematic diagram of a flow of unicast communication performed by a user equipment.
  • UE1, namely the first communication node 91 and UE2, namely the second communication node 92 are UEs in the RRC connected state, and they are under the same or different base station 93.
  • UE1 initiates V2X sidelink unicast communication with UE2.
  • This embodiment describes the sequence flow of unicast communication between UE1 and UE2 and UE1 obtaining sidelink unicast communication resources (triggering sidelink UE Information) from the base station.
  • S1-S4 mainly includes the following operations: UE1 initiates the L2 link establishment process, and provides the source and initial target L2 ID for initiating L2 connection establishment to send a direct communication request message, that is, a direct communication request message.
  • the UE1 triggers the sidelinkUEInformation to request the sidelink broadcast transmission resource to the base station to send the L2 connection establishment request message on the initial target L2 ID, that is, the sidelinkUEInformation contains: the initial target L2 ID, or the source L2 ID and the initial target L2 ID.
  • UE1 sends a direct communication request message.
  • UE1 Upon receiving the direct communication accept message sent by UE2, that is, the direct communication accept message, UE1 obtains the L2 ID of UE2 as its unicast communication target L2 ID.
  • the UE1 V2X layer provides unicast communication related information such as source L2 ID, target L2 ID, unicast communication type, PC5 QoS flow information (PFI and corresponding PC5 QoS parameters) to the AS layer.
  • S5-S6 mainly includes the following operations: After UE1 obtains the L2 ID of UE2 as its unicast communication target L2 ID, UE1 triggers the sending of sidelinkUEInformation to request the base station for sidelink unicast communication transmission resources, that is, sidelinkUEInformation contains at least one of the following: unicast communication target L2 ID, unicast communication type, source L2 ID and unicast communication destination L2 ID, direct unicast link identifier (PC5 link identifier), PC5 SRB or PC5 RRC indication (indicating request configuration PC5 SRB is used to send PC5 RRC signaling ), the unicast communication target L2 ID or the direct unicast link identifier (PC5 link identifier) or the source L2 ID and the PC5 QoS flow information in the unicast communication target L2 ID.
  • sidelinkUEInformation contains at least one of the following: unicast communication target L2 ID, unicast communication type, source L2 ID and unicast communication destination L2 ID, direct
  • PC5 QoS flow information includes PFI and corresponding PC5 QoS parameters.
  • PC5 QoS parameters include at least one of the following: PQI, GFBR/MFBR, PC5 link (i.e. link) AMBR, and communication distance, i.e. communication range.
  • the sidelinkUEInformation (direct link user equipment information) triggered by UE1 in S5 does not contain the unicast communication target L2 ID or the direct unicast link identifier (PC5 link identifier) or the source L2 ID and the unicast communication target L2 ID
  • PC5 link identifier direct unicast link identifier
  • S5a is executed, that is, the UE1 triggers the sending of sidelink UEInformation again to request the base station for sidelink unicast communication sending resources to send certain QoS parameter data.
  • the base station configures SLRB for the UE and allocates sidelink unicast communication transmission resources.
  • the base station configures the SLRB for the UE, and the SLRB configuration information includes the PC5 link identifier associated with the SLRB, or the destination layer 2 identification index associated with the SLRB; where the target layer 2 identification index associated with the SLRB is based on the destination L2 ID in the sidelinkUEInformation The serialized index number of the entry sequence.
  • S7-S9 mainly includes the following operations: After UE1 obtains the SLRB configuration information configured by the base station, it sends the SLRB configuration information to UE2 through PC5 RRC configuration signaling. If UE2 accepts the SLRB configuration, it returns the SLRB configuration response information and establishes the corresponding SLRB, UE1 After receiving UE2's response information, the corresponding SLRB is established. When the data arrives, UE1 obtains the sidelink unicast communication transmission resources from the base station, and sends the corresponding data through the established SLRB.
  • the method for requesting direct link communication resources determines the timing to trigger the sending of direct link user equipment information; determines the content of the direct link user equipment information and sends the direct link user equipment information to a base station, It can effectively request the base station to allocate or release direct link communication resources.
  • This application provides a through link communication resource request device, which is configured in user equipment, and includes:
  • the timing determination module is set to determine the timing to trigger the sending of the through link user equipment information
  • the sending module is configured to determine the content of the through link user equipment information and send the through link user equipment information to the base station.
  • the timing determination module is configured to: perform V2X direct link communication on the user equipment, configure the user equipment upper layer to perform V2X direct link communication reception, and the user equipment from the system message of the serving cell In the case of obtaining a valid V2X system information block; after the user equipment enters the connected state, the through link user equipment information is not sent to the base station, or the user equipment is connected since the last time the through link user equipment information was sent.
  • the system information of the received serving cell does not include the V2X system information block or the V2X system information block does not include the V2X communication general configuration information, or the last transmission of the direct link user equipment information does not include the service target information or frequency of interest.
  • Point information or when the upper layer configured to receive service target information or frequency point information sent after the direct link user equipment information was sent last time, triggers the sending of the direct link user equipment information.
  • the sending module is configured to: the direct link user equipment information includes service target or frequency point information of the V2X direct link communication that is interested in receiving.
  • the timing determination module is configured to: perform V2X direct link communication on the user equipment, configure the user equipment upper layer to perform V2X direct link communication reception, and the user equipment from the system message of the serving cell In the case of obtaining a valid V2X system information block; the information received by the upper layer configuration of the user equipment for V2X direct link communication no longer includes the V2X direct link that has been previously sent in the direct link user equipment information and is of interest In the case of the business target or frequency point information of the link communication, the sending of the through link user equipment information is triggered.
  • the sending module is configured to: the through link user equipment information does not include service target or frequency point information of V2X through link communication that is not interested in receiving.
  • the timing determination module is configured to: perform V2X direct link communication on the user equipment, configure the user equipment upper layer to perform V2X direct link communication and send, and the user equipment sends system messages from the serving cell In the case of obtaining a valid V2X system information block; when the user equipment has not sent through link user equipment information to the base station since entering the connected state, or the user equipment has sent through link user equipment information since the last time V2X system information block or V2X system information block does not include V2X communication general configuration information in the system information of the serving cell to which it is connected later, or V2X pass-through link communication transmission resources are not included in the last sent through link user equipment information When requesting information or the information in the V2X direct link communication transmission resource request changes after the direct link user equipment information was sent last time, the transmission of the direct link user equipment information is triggered to indicate the request for V2X direct link communication transmission resources.
  • the change in the information in the V2X direct link communication transmission resource request in the timing determination module includes at least one of the following: a new type of service type data transmission, and a new type of service type
  • a new source identifier and destination identifier are added for data transmission
  • a source identifier and destination identifier are added for a direct link interface quality of service data stream transmission
  • a new frequency point is added. Increase the sending of data.
  • the sending module is configured to: the through link user equipment information includes at least one of the following: a destination identifier of a newly added service type, and a newly added service quality data in a service type The stream identifier, a newly added source identifier and destination identifier, a newly added direct link interface quality of service data stream in a source identifier and destination identifier, and a newly added frequency point.
  • the timing determination module is configured to: perform V2X direct link communication on the user equipment, configure the user equipment upper layer to perform V2X direct link communication and send, and the user equipment sends system messages from the serving cell
  • the V2X direct link communication is configured to no longer send a service type or a direct link interface quality of service flow that is no longer sent on a service type Or no longer send a source identification and destination identification data or a direct link interface quality of service flow that is no longer sent on a source identification and a destination identification, or not send the service type or direct link quality of service on a frequency point
  • the sending of direct link user equipment information is triggered to indicate that the corresponding V2X direct link communication transmission resource is no longer needed.
  • the sending module is configured to: the through link user equipment information does not include at least one of the following: first target data that is no longer sent or a frequency point at which the first target data is no longer sent, so
  • the first target data includes: a service type that is no longer sent or a direct link interface quality of service flow that is no longer sent on a service type, or a source identification and destination identification data or a source that is no longer sent A quality of service flow of the direct link interface that is no longer sent on the identifier and the destination identifier.
  • the V2X direct link communication includes: V2X direct link broadcast communication, or V2X direct link multicast communication.
  • the timing determination module is configured to: perform V2X direct link unicast communication on the user equipment, configure the user equipment upper layer to perform V2X direct link unicast communication reception, and the user equipment receives from the serving cell In the case where a valid V2X system information block is obtained in the system message of the user equipment; when the user equipment has not sent the direct link user equipment information to the base station since entering the connected state, or the user equipment has sent the direct link since the last time
  • the system message of the serving cell connected after the user equipment information does not include the V2X system information block or the V2X system information block does not include the V2X communication general configuration information, or the last sent through link user equipment information does not include the interested receiver
  • the transmission of the through link user equipment is triggered Information, indicating the peer user equipment information or frequency information of the V2X direct link unicast communication that
  • the sending module is configured to: the direct link user equipment information includes the peer user equipment information or frequency point information of the V2X direct link unicast communication that is interested in receiving.
  • the timing determination module is configured to: perform V2X direct link unicast communication on the user equipment, configure the user equipment upper layer to perform V2X direct link unicast communication reception, and the user equipment receives from the serving cell In the case that a valid V2X system information block is obtained in the system message of the user equipment; the information received by the upper layer configuration of the user equipment for V2X direct link unicast communication no longer contains the information that has been previously sent in the direct link user equipment information In the case of the peer user equipment information or frequency point information of the V2X direct link unicast communication that is interested in receiving, the transmission of the direct link user equipment information is triggered to indicate the pair of V2X direct link unicast communication that is no longer interested in receiving End user equipment information or frequency point information.
  • the sending module is configured to: the direct link user equipment information does not include the peer user equipment information or frequency point information of the V2X direct link unicast communication that is no longer interested in receiving.
  • the timing determination module is configured to: perform V2X direct link unicast communication on the user equipment, configure the user equipment upper layer to perform V2X direct link unicast communication transmission, and the user equipment transmits from the serving cell
  • a valid V2X system information block is obtained in the system message of the user equipment; the user equipment has not sent the direct link user equipment information to the base station since it entered the connected state, or the user equipment has sent the direct link since the last time V2X system information block or V2X system information block does not include V2X communication general configuration information in the system message of the serving cell connected to the user equipment information, or the last sent through link user equipment information does not include V2X passthrough
  • Link unicast communication sends resource request information, or when the information in the V2X direct link unicast communication sending resource request has changed since the last time the through link user equipment information was sent, trigger the sending of through link user equipment information, Indicates to request V2X direct link unicast communication transmission resources.
  • the information in the V2X direct link unicast communication transmission resource request in the timing determination module has changed, including at least one of the following: adding data transmission for a peer user equipment, and for a peer user
  • a new type of quality of service data stream transmission is added to the device, a new data transmission for a source identifier and a destination identifier is added, a new data transmission for a through unicast link identifier is added, and a new data transmission for a through unicast link identifier is added.
  • the sending of a quality of service data stream is added, the sending of a quality of service data stream is added to the source identifier and the destination identifier, and the data sending to the opposite end user equipment is added on a frequency point.
  • the sending module is configured to: the through link user equipment information includes at least one of the following: a newly added peer user equipment, a newly added quality of service data stream on the peer user equipment , A newly added source identifier and destination identifier, a new quality of service data flow in the source identifier and destination identifier, a new through unicast link identifier, and a new through unicast link identifier.
  • This kind of service quality data stream a new frequency point.
  • the timing determination module is configured to: perform V2X direct link unicast communication on the user equipment, configure the user equipment upper layer to perform V2X direct link unicast communication transmission, and the user equipment transmits from the serving cell In the case of obtaining a valid V2X system information block in the system message of the user equipment; configuring the upper layer of the user equipment to configure the V2X direct link unicast communication to no longer send data to a peer user equipment or no longer send a data to the peer user equipment Direct link interface quality of service flow or no longer sending data to a source identification and destination identification or no longer sending a direct link interface quality of service flow to a source identification and destination identification or no longer sending a direct unicast link identification In the case that a direct link interface quality of service stream is no longer sent for a direct unicast link identifier or is not sent on a frequency point, the direct link user equipment information is triggered to indicate that the corresponding V2X is no longer needed Direct link unicast communication transmission resources.
  • the sending module is configured to: the through link user equipment information does not include at least one of the following: second target data that is no longer sent or a frequency point at which the second target data is no longer sent,
  • the second target data includes: data that is no longer sent to a peer user equipment or a direct link interface quality of service flow that is no longer sent to the peer user equipment or that is no longer sent to a source identifier and a destination identifier Data or a direct link interface quality of service flow that is no longer sent to the source identifier and destination identity, or data that is no longer sent for a direct unicast link identity or is no longer sent for a direct unicast link identity.
  • a kind of pass-through link interface quality of service flow is configured to: the through link user equipment information does not include at least one of the following: second target data that is no longer sent or a frequency point at which the second target data is no longer sent,
  • the second target data includes: data that is no longer sent to a peer user equipment or a direct link interface quality of service flow that is
  • the timing determination module is configured to: upon obtaining the layer 2 identifier of the peer user equipment, trigger the sending of the through link user equipment information, and instruct to request the through link unicast communication transmission resource.
  • the through link user equipment information in the timing determination module includes at least one of the following: unicast communication target layer 2 identification, unicast communication type, source layer 2 identification, and unicast communication target layer 2 identification, Direct link interface signaling, radio bearer or direct link interface, radio resource control signaling indication, direct unicast link identification, direct unicast link identification or unicast communication target layer 2 identification or source layer 2 identification and unicast communication The quality of service flow information of the through link interface in the target layer 2 identification.
  • the through link user equipment information in the timing determination module includes at least one of the following: unicast communication target layer 2 identification, unicast communication type, source layer 2 identification and unicast communication target layer 2 identification, Direct unicast link identification, direct link interface signaling radio bearer or direct link interface radio resource control signaling indication; correspondingly, it also includes:
  • the base station When the user equipment capability interaction is completed or the direct link interface radio resource control connection is established, the base station sends the direct unicast link identifier or the unicast communication target layer 2 identifier or the source layer 2 identifier and the unicast link to the base station. Broadcast the through link user equipment information of the through link interface quality of service flow information in the communication target layer 2 identification.
  • the quality of service flow information of the through link interface includes: the quality of service flow identifier of the through link interface, and the quality of service parameter or configuration file of the through link interface.
  • the device further includes: a receiving module configured to receive the direct link bearer configuration information sent by the base station, and the direct link bearer configuration information sent by the base station includes: direct unicast associated with the direct link bearer Link identification, or the target layer 2 identification index associated with the through link bearer; wherein the target layer 2 identification index associated with the through link bearer is an index serialized according to the entry sequence of the target layer 2 identification in the through link user information Numbering.
  • This application also provides a user equipment, including: one or more processors; a storage device, used to store one or more programs; when the one or more programs are executed by the one or more processors, The one or more processors are enabled to implement the direct link communication resource request method provided in this application.
  • the present application also provides a storage medium storing a computer program that, when executed by a processor, implements the through link communication resource request method provided by the present application.

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  • Computer Networks & Wireless Communication (AREA)
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  • Mobile Radio Communication Systems (AREA)

Abstract

L'invention concerne un procédé et un appareil de transmission de données, un premier nœud de communication et un second nœud de communication. Le procédé de transmission de données comprend les étapes consistant à : déterminer des informations de configuration de remappage, les informations de configuration de remappage indiquant une qualité remappée d'un flux de service d'une interface de liaison latérale, une porteuse radio de liaison latérale (SLRB) source correspondante et une SLRB cible correspondante ; et envoyer les informations de configuration de remappage à un second nœud de communication.
PCT/CN2020/092777 2019-07-11 2020-05-28 Procédé et appareil de transmission de données, premier nœud de communication et second nœud de communication WO2021004182A1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
US17/626,478 US20220286896A1 (en) 2019-07-11 2020-05-28 Data transmission method and apparatus, first communication node, and second communication node
EP20836377.0A EP3998786A4 (fr) 2019-07-11 2020-05-28 Procédé et appareil de transmission de données, premier noeud de communication et second noeud de communication
KR1020227004553A KR20220034845A (ko) 2019-07-11 2020-05-28 데이터 전송 방법, 장치, 제1 통신노드 및 제2 통신노드
JP2022501310A JP7392100B2 (ja) 2019-07-11 2020-05-28 データ伝送方法、装置、第1通信ノードおよび第2通信ノード

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CN201910626012.8A CN110536263A (zh) 2019-07-11 2019-07-11 一种数据传输方法、装置、第一通信节点及第二通信节点
CN201910626012.8 2019-07-11

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CN110536263A (zh) * 2019-07-11 2019-12-03 中兴通讯股份有限公司 一种数据传输方法、装置、第一通信节点及第二通信节点
JP7033173B2 (ja) 2019-08-02 2022-03-09 華碩電腦股▲ふん▼有限公司 ワイヤレス通信システムにおけるサイドリンク無線ベアラを解放するための方法及び装置
CN114449473B (zh) * 2019-08-12 2023-10-31 Oppo广东移动通信有限公司 无线通信的方法、终端设备和网络设备
JP2023513651A (ja) * 2020-01-07 2023-04-03 オッポ広東移動通信有限公司 サービス品質(QoS)パラメータの構成方法及び関連装置
WO2021138868A1 (fr) * 2020-01-09 2021-07-15 Mediatek Singapore Pte. Ltd. Procédés et appareil de configuration de liaison latérale et d'acheminement de trafic pour relais de couche 2 entre equipements utilisateurs
CN111931253B (zh) * 2020-09-15 2021-01-15 腾讯科技(深圳)有限公司 基于节点群的数据处理方法、系统、设备和介质
CN114697910A (zh) * 2020-12-25 2022-07-01 株式会社电装 用于车联网的单播通信方法和装置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017197649A1 (fr) * 2016-05-20 2017-11-23 华为技术有限公司 Procédé d'envoi de message de service, dispositif de terminal et dispositif de réseau
CN109379784A (zh) * 2017-01-25 2019-02-22 宏碁股份有限公司 对数据包进行映射的方法及使用所述方法的相关装置
CN109526026A (zh) * 2018-10-29 2019-03-26 中国电子科技集团公司第三十六研究所 一种基于End/Start Mark的上行SDAP重映射方法和装置
CN109952773A (zh) * 2017-05-05 2019-06-28 联发科技股份有限公司 使用sdap报头处理as/nas反射qos并确保在5g通信系统中重映射期间顺序传送分组
CN110536263A (zh) * 2019-07-11 2019-12-03 中兴通讯股份有限公司 一种数据传输方法、装置、第一通信节点及第二通信节点

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110493823B (zh) * 2016-08-15 2020-09-04 华为技术有限公司 一种数据处理方法及装置
WO2019010617A1 (fr) * 2017-07-10 2019-01-17 北京小米移动软件有限公司 Procédé et dispositif de transmission de données, dispositif d'extrémité de réception et dispositif d'extrémité d'émission
AU2017427114A1 (en) 2017-08-11 2020-01-02 Guangdong Oppo Mobile Telecommunications Corp., Ltd. Data transmission method, transmitting end device, and receiving end device
CN109548085A (zh) * 2017-08-11 2019-03-29 华为技术有限公司 传输数据的方法、接入网设备和终端设备

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017197649A1 (fr) * 2016-05-20 2017-11-23 华为技术有限公司 Procédé d'envoi de message de service, dispositif de terminal et dispositif de réseau
CN109379784A (zh) * 2017-01-25 2019-02-22 宏碁股份有限公司 对数据包进行映射的方法及使用所述方法的相关装置
CN109952773A (zh) * 2017-05-05 2019-06-28 联发科技股份有限公司 使用sdap报头处理as/nas反射qos并确保在5g通信系统中重映射期间顺序传送分组
CN109526026A (zh) * 2018-10-29 2019-03-26 中国电子科技集团公司第三十六研究所 一种基于End/Start Mark的上行SDAP重映射方法和装置
CN110536263A (zh) * 2019-07-11 2019-12-03 中兴通讯股份有限公司 一种数据传输方法、装置、第一通信节点及第二通信节点

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
ERICSSON: "QoS Flow remapping and end marker", 3GPP TSG-RAN WG2 #101BIS TDOC R2-1805507, 20 April 2018 (2018-04-20), XP051429161, DOI: 20200810171136A *
OPPO: "Resource selection in CA-based eV2x", 3GPP TSG-RAN2 MEETING #99 R2-1707701, 25 August 2017 (2017-08-25), XP051317663, DOI: 20200810171029A *
See also references of EP3998786A4

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JP2022540475A (ja) 2022-09-15
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